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Aerodynamic Drag Reduction for Ground Vehicles using Lateral Guide Vanes

机译:使用侧向导向叶片减少地面车辆的气动阻力

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The use of lateral guide vanes as a drag reducing device for ground vehicles is numerically investigated in the present study. Two types of ground vehicles are considered, a simplified bus model and a simplified sport utility vehicle (SUV) model. The guide vanes are used to direct air into the low-pressure wake region in order to enhance pressure recovery, which in turn would reduce form drag and hence the overall aerodynamic drag. Computational fluid dynamics simulations are used to assess the efficiency of the drag reducing device. The steady-state simulations are based on the Reynolds-averaged Navier-Stokes equations, with turbulence closure provided through two-equation eddy-viscosity models. Guide vane cross-section, chord length and angle of attack are varied in order to obtain the optimal configuration for improved aerodynamic performance. Simulations indicate an overall reduction in the aerodynamic drag coefficient of up to 18% for the bus and SUV models with the use of the lateral guide vanes. Grid-independence tests and comparison with available data in the literature is carried out to validate the present numerical procedure.
机译:在本研究中,已对使用侧向导向叶片作为地面车辆减阻装置进行了数值研究。考虑了两种类型的地面车辆,一种简化的公共汽车模型和一种简化的运动型多用途车(SUV)模型。导流叶片用于将空气导入低压尾流区域,以增强压力恢复能力,这反过来又会减小形式阻力,从而降低总体气动阻力。计算流体动力学模拟用于评估减阻装置的效率。稳态仿真基于雷诺平均Navier-Stokes方程,并通过两方程式涡流-粘度模型提供了湍流闭合。改变导叶的横截面,弦长和攻角,以获得用于改善空气动力学性能的最佳配置。模拟表明,使用侧向导向叶片的公共汽车和SUV车型的空气阻力系数总体降低了18%。进行网格独立性测试并与文献中的可用数据进行比较以验证本数值程序。

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